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Relating the spectrum of cardiac signals to the spatiotemporal dynamics of cardiac sources

机译:将心脏信号频谱与心脏来源的时空动态联系起来

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An increasing number of studies use the spectrum of cardiac signals for analyzing the spatiotemporal dynamics of complex cardiac arrhythmias. However, the relationship between the spectrum of cardiac signals and the spatiotemporal dynamics of the underlying cardiac sources remains to date unclear. In this paper, by following a multivariate signal analysis approach we identify the relationship between the spectrum of cardiac signals, the spatiotemporal dynamics of cardiac sources, and the measurement characteristics of the lead systems. Then, by using analytical methods and computer simulations we analyze the spectrum of cardiac signals measured by idealized lead systems during correlated and uncorrelated spatiotemporal dynamics. Our results show that lead systems can have distorting effects on the spectral envelope of cardiac signals, which depend on the spatial resolution of the lead systems and on the degree of spatiotemporal correlation of the underlying cardiac sources. In addition to this, our results indicate that the spectral features that do not depend on the spectral envelope behave robustly against different choices of lead systems.
机译:越来越多的研究使用心脏信号频谱分析复杂的心律不齐的时空动态。然而,迄今为止,心脏信号频谱与潜在心脏源的时空动态之间的关系仍不清楚。在本文中,通过采用多元信号分析方法,我们确定了心脏信号频谱,心脏源的时空动态以及前导系统的测量特征之间的关系。然后,通过使用分析方法和计算机模拟,我们分析了理想的铅系统在相关和不相关的时空动力学过程中测得的心脏信号频谱。我们的结果表明,导联系统可能会对心脏信号的频谱包络产生失真的影响,这取决于导联系统的空间分辨率以及基础心脏源的时空相关程度。除此之外,我们的结果表明,不依赖光谱包络线的光谱特征在针对不同铅系统选择时表现出较强的性能。

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